Cui Zhigang, Huang Leilei, Ding Yi, Zhu Xuechao, Lu Xinhua, Cai Yuanli
State-Local Joint Engineering Laboratory of Novel Functional Polymeric Materials, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.
ACS Macro Lett. 2018 May 15;7(5):572-575. doi: 10.1021/acsmacrolett.8b00199. Epub 2018 Apr 27.
Compartmentalization and unidirectional cross-domain molecule shuttling are omnipresent in proteins, and play key roles in molecular recognition, enzymatic reaction, and other living functions. Nanomachinery design emulating these biological functions is being considered as one of the most ambitious and challenging tasks in modern chemistry and nanoscience. Here, we present a biomimetic nanomachinery design using single-chain technology. Stepwise complex of the outer blocks of water-soluble linear ABC triblock terpolymer to copper ions yields dumbbell-shaped single-chain nanoparticle. A novel nanomachine capable of compartmentalization and unidirectional cross-domain molecule shuttling has been achieved upon ascorbic acid reduction, leading to synergistically donating/accepting copper centers between discrete double heads, overall dumbbell-to-tadpole configurational transition, and intake of oxidized ascorbic acid into reconstructed head. Subsequent air oxidation results in the inverse molecule shuttling and configurational transition processes. This is the first demonstration of biomimetic nanomachinery design that is capable of compartmentalization and unidirectional cross-domain molecule shuttling, exemplified simply using a new single-chain technology.
区室化和单向跨域分子穿梭在蛋白质中普遍存在,并在分子识别、酶促反应及其他生命功能中发挥关键作用。模拟这些生物学功能的纳米机器设计被认为是现代化学和纳米科学中最具雄心和挑战性的任务之一。在此,我们展示了一种使用单链技术的仿生纳米机器设计。水溶性线性ABC三嵌段三元共聚物的外部嵌段与铜离子逐步形成配合物,产生哑铃形单链纳米颗粒。在抗坏血酸还原后,实现了一种能够进行区室化和单向跨域分子穿梭的新型纳米机器,导致离散双头之间协同地供体/受体铜中心、整体哑铃到蝌蚪构型转变以及氧化型抗坏血酸进入重构头部。随后的空气氧化导致反向分子穿梭和构型转变过程。这是首次展示能够进行区室化和单向跨域分子穿梭的仿生纳米机器设计,仅通过一种新的单链技术进行了示例说明。